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Rate-dependence of the tensile behaviour of fibre reinforced concrete in the quasi-static regime

机译:准静态条件下纤维增强混凝土抗拉性能的速率相关性

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摘要

The effect of crack rate on the tensile stress-crack width relation of fibre reinforced concrete is studied experimentally, using the three-point bending test, where the post-peak flexural response of the material is determined over a range of loading rates covering 5 orders of magnitude. The tetralinear stress-crack opening (sigma-omega) relations are subsequently obtained from inverse analyses. Concretes with hooked-ended steel fibres at different dosages and with polypropylene fibres have been studied. The results show that the tensile strength is reduced and the initial drop in cohesive stresses is less steep at slower loading rates, with the changes being more significant in concretes with lower toughness. Numerical analysis shows that the fracture process zone at crack initiation extends further as the loading becomes slower. The variation in the sigma-omega relation with crack rate has been modelled empirically based on the rate-dependence of the concrete matrix and the tensile strength of the FRC. The general variation of flexural toughness with the loading rate has also been identified, reflecting the moderating influence due to steel fibres, especially at higher dosages.
机译:使用三点弯曲试验,通过实验研究了开裂速率对纤维增强混凝土拉伸应力-开裂宽度关系的影响,其中,在涵盖5个数量级的一系列加载速率下确定了材料的峰后弯曲响应数量级。随后从反分析中获得四线性应力裂纹开度(sigma-omega)关系。研究了不同剂量的钩端钢纤维和聚丙烯纤维的混凝土。结果表明,在较低的加载速率下,抗张强度降低,内聚应力的初始下降不那么陡峭,而韧性较低的混凝土的变化更为明显。数值分析表明,随着载荷变慢,裂纹萌生时的断裂过程区进一步延伸。基于混凝土基体的速率依赖性和FRC的抗拉强度,经验地模拟了σ-ω关系随裂纹率的变化。还确定了挠曲韧性随加载速率的一般变化,反映出由于钢纤维而产生的适度影响,尤其是在较高剂量下。

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